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1.
通过波浪水槽试验,研究了泥沙起动临界状态时太湖贡湖湾底泥内源释放的特点。结果表明,当底泥处于泥沙起动临界状态时,底泥以上1cm处上覆水中溶解氧在前15min内呈降低趋势,由初始7.5mg/L左右降低至7.0mg/L以下;约20min后,溶解氧总体呈升高趋势,最高达到8.12mg/L;底泥以上1cm处上覆水中硝态氮、亚硝态氮、氨氮和磷酸根等营养盐浓度仅在过程中有不同程度的波动,试验前后基本保持不变。初步研究结果可见,在波浪水槽试验的条件下,泥沙起动临界状态在短时间内能降低水-沉积物界面上覆水的溶解氧浓度,而从环境效应角度看对太湖贡湖湾底泥内源释放没有影响。  相似文献   

2.
投加硝酸钙是目前河道黑臭底泥原位治理常用的方法,然而,投加硝酸钙会造成底泥硝态氮和氨氮的过量释放,而其影响机制尚未明确。因此有必要对投加硝酸钙后硝态氮在底泥中的迁移转化规律及其促进氨氮释放的机理进行研究。结果发现,硝酸盐在间隙水的迁移距离取决于硝态氮反硝化速率,而在黑臭底泥中硫化物氧化是影响反硝化速率的关键因素。当硝酸钙投加量为20 g/kg时,硝态氮的迁移距离小于6 cm,且在14 d后消耗光;可见,通过控制硝酸钙在底泥中的投加位置可避免硝态氮的二次释放。另一方面,投加硝酸钙会促进底泥氨态氮向间隙水释放,投加当天释放率可高达101%,且会在间隙水中发生累积迁移。其中,氨氮的增加量和底泥氨态氮解吸量呈一级线性关系(r=0.986)、和硝酸钙投加量关系符合cubic曲线;据此可推测,氨氮的急剧释放与钙离子对底泥铵态氮的化学浸提有关。  相似文献   

3.
水葫芦对滇池底泥氮磷营养盐释放的影响   总被引:1,自引:0,他引:1  
为了探讨水葫芦对富营养湖泊底泥氮磷营养盐释放的影响,通过原位采集滇池柱状底泥,以蒸馏水为上覆水,进行了25d的室内静态模拟实验。实验比较了水葫芦处理组和空白对照组底泥氨氮(NH4-N)、硝态氮(NO3^-N)、溶解性总氮(DTN)、正磷酸盐(PO4^3--P)等的释放特征。结果表明,与对照组相比,水葫芦处理组上覆水溶解氧、pH显著性降低,而PO4^3-P浓度显著性升高;在实验前2d,水葫芦处理组上覆水NH4^+N和DTN浓度显著性高于对照组,而在5~25d时,其显著性低于对照组。根据上覆水营养盐浓度、水葫芦植株吸收营养盐总量,推算底泥氮磷营养盐释放的平均速率,表明水葫芦加速了滇池底泥氮、磷营养盐的释放速率,处理组氮、磷释放速率分别为对照组的5.3~170.2和1.5~21.6倍。  相似文献   

4.
城市内河沉积物硝态氮释放行为的模拟研究   总被引:1,自引:0,他引:1  
余荣台 《环境工程学报》2014,8(7):2870-2874
沉积物营养盐的释放已引起相关学者的极大兴趣,对沉积物中硝态氮的释放行为研究还鲜有关注。通过室内模拟研究,考察不同pH、温度、扰动、曝气和光照条件下硝态氮的释放行为。研究结果表明,中性条件下,沉积物硝态氮释放速率最快;温度对硝态氮的释放起着明显的促进作用,随着温度的增加,硝化菌活性增强,硝态氮释放速率明显加快。同时,扰动、曝气和光照对硝态氮的释放也起着一定的促进作用。  相似文献   

5.
采用自制河道模拟装置,探讨了曝气扰动深度为10、15、25和35 cm时泥水界面硝化-反硝化的耦合性能,目的为曝气治理黑臭河道装置的优化实施和解决"氮超标"难题提供参考。结果表明,随扰动深度增加,泥水界面紊动程度呈现先下降后增加的趋势,其中泥水界面处扰动深度为10 cm时流态最激烈(Re为3 044),扰动深度为25 cm时流态最平缓(Re为1 713);与静止对照工况对比,曝气扰动促进了NH+4-N的硝化转化,4种曝气条件稳定时上覆水氨氮浓度都在0.50mg/L以下,表明曝气有利于对底泥释放氨氮的控制;复氧速率与硝化速率随扰动深度的增加而减小;从总氮的控制角度来看,曝气扰动深度为25 cm时最有利于硝化-反硝化作用的耦合,上覆水总氮削减率达到51.5%,泥水界面硝化率与反硝化率分别达到(41.6±3.1)%和(32.1±0.7)%。  相似文献   

6.
曝气和pH对城市污染河道底泥氮形态的影响   总被引:3,自引:0,他引:3  
许宽  刘波  王国祥  杜旭  凌芬  周锋 《环境工程学报》2012,6(10):3553-3558
以城市重污染河道表层沉积物为研究对象,采用模拟实验方法,探讨了不同曝气方式(水曝气和泥曝气)、上覆水初始pH(自然状态pH=7和pH=11)对城市污染河道底泥氮形态的影响。结果表明:采用水曝气+pH11方式对城市重污染河道上覆水、间隙水中总氮去除率分别为70.03%和44.66%;泥曝气+pH7方式对上覆水、间隙水、底泥中氨氮去除率分别为94.31%、84.07%和68.29%;底泥pH与上覆水总氮浓度呈正相关(p<0.05);泥曝气+pH11方式使底泥含水率、烧失率明显升高,继而影响各形态氮在泥水系统中的赋存,其中底泥吸附态氨氮含量与底泥含水率呈显著负相关(p<0.01),间隙水可溶态氨氮浓度与底泥烧失率显著正相关(p<0.01)。  相似文献   

7.
南京玄武湖底泥磷释放复水模拟实验研究   总被引:3,自引:0,他引:3  
重点分析了底泥营养物的分层分布对湖泊水质的影响强度;模拟了复水过程底泥内营养盐中的磷的释放规律;建立了上覆水中磷浓度变化对界面物质交换的影响方程。模拟分析研究表明,分布在底泥沉积物的无机态营养盐在较长时间内都将持续影响湖体水质,实验结果对实施生态湖建设及防止湖体富营养化具有一定意义。  相似文献   

8.
底泥污染物释放动力学研究   总被引:33,自引:0,他引:33  
采用模拟试验方式和新型微生物数量测定方法,研究了沼泽化湖泊底泥和受污染河流底泥在不同扰动状态下,底泥耗氧速率、氮和磷污染物释放动力学过程。结果表明:(1)底泥耗氧速率是同样条件下上覆水耗氧速率的48倍,而在扰动状态下,底泥氧速率达到上覆水耗氧速率的596-936倍,扰动底泥显著增大其耗氧速率,底泥污染越严重,其耗氧速率越大,对水体产生的影响也越大。(2)扰动底泥可以显著增大底泥的氮磷释放速率,氮的释放受到机氮的氨化、氨氮的硝化、硝酸盐氮的反硝化以及氨氮被微生物吸收转化为有机氮等的影响;磷的释放过程受厌氧过程和底泥颗粒吸附的影响,耗氧速率高的底泥具有更大的氨磷释放潜力。(3)微生物数量在底泥污染物释放动力学中起着关键性作用,亲型方法可以快速检测微生物总量。试验结果对于水环境的管理、受污染水体的修复,以及底泥的处理处置等都具有重要的指导意义。  相似文献   

9.
扬州古运河沉积物污染物释放强度与特征研究   总被引:2,自引:0,他引:2  
研究了扬州古运河沉积物中氮、磷、铁和锰等污染物释放强度与特征,着重考察了上覆水中DO和污染物负荷对污染物释放强度的影响,分析了氮、磷、铁和锰等污染物释放条件.结果表明:扬州古运河有一定的自净能力,且呈现初期释放NH4+ -N、后期转化为NO3-- N的特征;随着水环境条件改变,沉积物NH4+ -N、PO34-、铁和锰平均释放强度变化范围是123.14~445.68、13.50~32.45、25.20~198.47、19.97~25.02 mg/(m2·d);上覆水DO浓度越低,污染物平均释放强度越大;上覆水污染物浓度越小,污染物(除铁外)平均释放强度越大;在DO<5 mg/L条件下,沉积物向上覆水释放NH4+ -N;在DO<1 mg/L条件下,沉积物向上覆水释放PO34-、铁和锰;在DO为2~5 mg/L条件下,上覆水PO34-和铁向沉积物中汇入,但锰则呈现释放和汇入的交替变化.  相似文献   

10.
阳宗海沉积物中磷的稳定性   总被引:1,自引:0,他引:1  
絮凝剂(Fe Cl3)治理阳宗海砷污染的过程中,水体中的磷被大量沉积进入底泥,弄清其是否会在环境条件变化后发生反溶形成二次污染对湖泊富营养化防治具有重要意义。通过模拟实验模拟泥-水界面p H变化、物理扰动和微生物活动的变化,旨在分析这些环境因子变化对沉积物中磷溶出的影响。结果表明,阳宗海水体在目前这种磷浓度下,底泥的磷会随时间的增加而溶出再次造成水体磷污染,当暴露在清洁水条件下时磷的释放率会增加;这种由于絮凝剂吸附沉淀到湖底的磷,在上覆水p H增加0.5时底泥磷解吸附释放速率增加;每年秋季湖泊上下层水的交换活动会造成水体磷浓度的季节性升高,形成不可忽视的磷内源。而夏季水温分层导致湖泊底部厌氧,使厌氧微生物活性增强,这将进一步促进底泥中磷的释放。  相似文献   

11.
分段进水多级生物膜反应器脱氮效能影响因素研究   总被引:2,自引:1,他引:1  
采用分段进水多级生物膜反应器处理高氮低碳小城镇污水,考察负荷、溶解氧和温度对反应器脱氮效能的影响。实验结果表明:负荷、溶解氧和温度对反应器脱氮效能有显著影响。在水温为20~25℃,DO为5 mg/L,负荷为1 kgCOD/(m3.d),挂膜密度为30%,第1、3、6级分段进水,流量分配比为2∶2∶1的条件下,在反应器中可成功构建出高效同时硝化反硝化系统,出水COD、NH4+-N和TN浓度分别为33 mg/L、2.6 mg/L和29.4 mg/L,去除率分别为90.1%、96.0%和63.9%。当水温≤15℃时,硝化速率受温度的影响显著。  相似文献   

12.
Precipitation, soil solution and drainage water were collected from a blanket peat catchment at Moor House National Nature Reserve in the Northern Pennine Uplands, UK, an area of moderately high N deposition. Two tributaries of the main stream were also sampled. Between 1993 and 1995 samples were analysed for NH4+ and NO3- and for part of the period for organic N. Inputs of N in precipitation exceeded outputs in stream water. Organic N represented a small proportion of N inputs while inputs of inorganic N averaged 10.2 kg ha(-1) a(-1). Soil solution from 10 cm depth in the peat was dominated by organic N whereas at 50 cm NH4+ slightly exceeded organic N. NO3- was rarely detected at either depth except during a period of exceptionally warm and dry weather in 1995. Output fluxes in stream water of organic N (5.7 to 6.5 kg ha(-1) a(-1)) were much greater than those of inorganic N (0.6 to 2.2 kg ha(-1) a(-1)). Inorganic N in streams was predominantly NO3- except in the smallest stream which had the largest concentrations of NH4+. This suggests that N transformations, particularly nitrification, may be taking place in the mineral soils adjacent to the streams or within the stream channel of the larger catchment.  相似文献   

13.
底泥污染物释放动力学研究   总被引:13,自引:1,他引:13  
采用模拟试验方式和新型微生物数量测定方法 ,研究了沼泽化湖泊底泥和受污染河流底泥在不同扰动状态下 ,底泥耗氧速率、氮和磷污染物释放动力学过程。结果表明 :( 1)底泥耗氧速率是同样条件下上覆水耗氧速率的 48倍 ,而在扰动状态下 ,底泥耗氧速率达到上覆水耗氧速率的 5 96— 93 6倍 ,扰动底泥显著增大其耗氧速率 ,底泥污染越严重 ,其耗氧速率越大 ,对水体产生的影响也越大。 ( 2 )扰动底泥可以显著增大底泥的氮磷释放速率 ,氮的释放受有机氮的氨化、氨氮的硝化、硝酸盐氮的反硝化以及氨氮被微生物吸收转化为有机氮等的影响 ;磷的释放过程受厌氧过程和底泥颗粒吸附的影响 ,耗氧速率高的底泥具有更大的氮磷释放潜力。 ( 3 )微生物数量在底泥污染物释放动力学中起着关键性作用 ,新型方法可以快速检测微生物总量。试验结果对于水环境的管理、受污染水体的修复 ,以及底泥的处理处置等都具有重要的指导意义  相似文献   

14.
The nitrifying activity and the effect of fertilization with urea and methylene urea were studied in a landfarming site. The site has been operative over 20 years and maintained by heavy nitrogen fertilization. The landfarming soil contained 4-6% (w/w) oil. The nitrate accumulation was 20-50mg NO3-N day(-1)kg(-1) observed after methylene urea fertilization of 889 g Nm(-2). Nitrification ex situ (in laboratory conditions) was 8.8 mg NO3-N day(-1) kg(-1) in the presence of 380 mg kg(-1) NH4+-N. The half-saturation concentration of nitrification was more than 200 mg NH4+-N kg(-1). The results show that nitrification was active in soil with high oil concentration. Urea fertilization of 893 g Nm(-2) caused an increase of soil NH4+-N concentration up to 5500 mg kg(-1) and pH>8.5. This led to inhibition of nitrification, which persisted after NH4+ concentration decreased below 200mg NH4+ kg(-1).  相似文献   

15.
The removal capacity of carbon and nitrogen from an artificial leachate was evaluated by using laboratory-scale columns, and a design was proposed to remove nitrogen more efficiently from a semiaerobic landfill. Five columns (i.e., two artificial municipal waste columns under anaerobic and semiaerobic conditions, an artificial construction waste column under semiaerobic conditions, and two crushed stone columns under anaerobic and semiaerobic conditions) were used. The influent load rates of organics [g chemical oxygen demand (COD)/m3 x day], NH4+, NO3- and aeration conditions for the columns were varied, and the removal capacities of the columns for COD, NH4+-N, and NO3--N were measured. Among the packed column materials, crushed stone was shown to be most effective in removing COD, NH4+ N, and NO3--N from artificial leachate. Average removal rates of crushed column under the semiaerobic condition (column D) for COD and NH4+-N were estimated at about 150 g COD/m3 x day and 20 g COD/m3 x day, while those of crushed column under anaerobic condition (column E) for COD and NO3--N at about 400 and 150 g COD/m3 x day, respectively. It also was found that denitrification and nitrification reactions in column D occurred at the same time, and the ratio of denitrification to nitrification was estimated to be about 80%. Therefore, an anaerobic structure, which could be attached to the bottom of a main pipe in a semiaerobic landfill, is suggested to remove nitrogen and organic substances more effectively.  相似文献   

16.
把pH值在线监测与药品自动投加系统与已开发的混合呼吸测量仪集成,组成自动呼吸-滴定测量仪,同时测得废水生物处理过程溶解氧(DO)、pH、氧气利用速率(OUR)和质子变化速率(HVR)。分别监测了只投加NH4+-N底物的活性污泥硝化过程和实验室脱氮除碳SBR曝气阶段的DO/pH响应,结果显示,两信号呈一定规律变化,在反应...  相似文献   

17.
研发了一种基于射流曝气的管式反应设备,考察了负荷和DO对反应器处理效能的影响。实验结果表明,在温度为15℃、DO 6.0 mg/L、有机负荷为1.0 kg COD/(m3.d)、氮负荷为0.30 kg TN/(m3.d)、HRT为8 h的条件下,管式反应器可使生活污水的COD、NH4+-N及TN分别从335 mg/L、105 mg/L及110 mg/L降至43 mg/L、14 mg/L及18 mg/L,去除率分别为87%、86%和83%。DO对反应器脱氮效能影响显著,DO为6 mg/L时,能构建出同步硝化反硝化系统,NH4+-N和TN的去除率分别为96.6%和86.7%。  相似文献   

18.
变频控制DO下SBR硝化反应控制参数及节能的中试研究   总被引:2,自引:0,他引:2  
根据微生物好氧反应的需氧量调节曝气量在当今能源紧缺的形势下具有十分重要的意义.为了研究曝气量大小对SBR实时控制参数pH、DO的影响,采用变频器调节曝气量以控制系统不同的DO浓度,以60 m3中试SBR反应器处理北京市北小河污水处理厂城市污水,考察了硝化过程中pH值、DO与有机物去除及硝化过程的相关性,并引入了新的控制参数--变频频率f.试验结果表明,控制溶解氧浓度较低时,pH值不能作为硝化结束的控制参数,但可根据变频频率f的特征点判断硝化反应的结束;控制溶解氧为3.0 mg/L和4.0 mg/L时,DO、pH值、变频频率f都可作为硝化结束的控制参数,同时,变频控制可有效降低单位时间内风机的能耗.  相似文献   

19.
低COD/N-NH_4比废水的同时硝化反硝化生物处理策略   总被引:3,自引:0,他引:3  
从生化反应计量学出发 ,提出了对低 COD/ N- NH4比废水可以通过控制营养配比、调控溶解氧浓度和控制生物硝化及生物反硝化 ,经过 NO- 2 途径进行同时硝化反硝化的生物处理策略。对香港低 COD/ N- NH4比的垃圾渗漏水用同时硝化反硝化处理的成功实例进行了讨论  相似文献   

20.
Eutrophication has decreased the O(2) content and increased the NH(4)(+) availability in freshwaters. These changes may affect carbon and nitrogen transformation processes and the production of CH(4) and N(2)O, which are important greenhouse gases. We studied release of CH(4) and N(2)O from a eutrophic lake sediment under varying O(2) and NH(4)(+) conditions. Intact sediment cores were incubated in a laboratory microcosm with a continuous anoxic or oxic water flows containing 0, 50, 500, 5,000, or 15000 microM NH(4)(+). With the anoxic flow, the sediment released CH(4), up to 7.9 mmol m(-2)d(-1). With the oxic flow, the CH(4) emissions were small indicating limited CH(4) production and/or effective CH(4) oxidation. Addition of NH(4)(+) did not affect sediment CH(4) release, evidence that the CH(4) oxidizing bacteria were not disturbed by the extra NH(4)(+). The release of N(2)O from the sediment was highest, up to 7.6 micromol m(-2)d(-1), with the oxic flow without NH(4)(+) addition. Oxygen was the key factor regulating the production of NO(3)(-), which enabled denitrification and production of N(2)O. However, the highest NH(4)(+) addition increased nitrification and associated O(2) consumption causing a decrease in sediment O(2) content and in accumulation of NO(3)(-) and N(2)O, which were effectively reduced to N(2) in denitrification. In summary, sediment CH(4) and N(2)O dynamics are regulated more by the availability of O(2) than extra NH(4)(+). Anoxia in eutrophic lakes favouring the CH(4) production, is the major contributor to the atmospheric consequences of water eutrophication.  相似文献   

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